Mechanical Properties of Layered Rock Mass

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Bol line-height: 115%;">This book focuses on revealing the anisotropic mechanical behaviors of layered rock masses subjected to various dynamic loads, by means of theoretical analyses, physical experiments and numerical simulations. This book focuses on revealing the anisotropic mechanical behaviors of layered rock masses subjected to various dynamic loads, by means of theoretical analyses, physical experiments and numerical simulations. It aims at elucidating the effects of structural planes on the mechanical properties, fracture characteristics and failure modes of rock masses. Notably, the book introduces a novel strength criterion specifically designed to represent shale strength under dynamic impact conditions. Serving as a valuable resource, this work is intended to benefit researchers and professionals involved in shale gas extraction, blasting engineering, and mining engineering. Additionally, it is well-suited as a textbook for graduate students in above disciplines and other related subjects. This book focuses on revealing the anisotropic mechanical behaviors of layered rock masses subjected to various dynamic loads, by means of theoretical analyses, physical experiments and numerical simulations. It aims at elucidating the effects of structural planes on the mechanical properties, fracture characteristics and failure modes of rock masses. Notably, the book introduces a novel strength criterion specifically designed to represent shale strength under dynamic impact conditions. Serving as a valuable resource, this work is intended to benefit researchers and professionals involved in shale gas extraction, blasting engineering, and mining engineering. Additionally, it is well-suited as a textbook for graduate students in above disciplines and other related subjects.

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line-height: 115%;">This book focuses on revealing the anisotropic mechanical behaviors of layered rock masses subjected to various dynamic loads, by means of theoretical analyses, physical experiments and numerical simulations. This book focuses on revealing the anisotropic mechanical behaviors of layered rock masses subjected to various dynamic loads, by means of theoretical analyses, physical experiments and numerical simulations. It aims at elucidating the effects of structural planes on the mechanical properties, fracture characteristics and failure modes of rock masses. Notably, the book introduces a novel strength criterion specifically designed to represent shale strength under dynamic impact conditions. Serving as a valuable resource, this work is intended to benefit researchers and professionals involved in shale gas extraction, blasting engineering, and mining engineering. Additionally, it is well-suited as a textbook for graduate students in above disciplines and other related subjects. This book focuses on revealing the anisotropic mechanical behaviors of layered rock masses subjected to various dynamic loads, by means of theoretical analyses, physical experiments and numerical simulations. It aims at elucidating the effects of structural planes on the mechanical properties, fracture characteristics and failure modes of rock masses. Notably, the book introduces a novel strength criterion specifically designed to represent shale strength under dynamic impact conditions. Serving as a valuable resource, this work is intended to benefit researchers and professionals involved in shale gas extraction, blasting engineering, and mining engineering. Additionally, it is well-suited as a textbook for graduate students in above disciplines and other related subjects.


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  • 9789819651412
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